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1.
结合爆破振动的作用机理,分别对减少振源爆炸能量、干扰降振、阻断振动波传播途径、控制爆破规模、合理选择分段间隔时间等爆破振动主要控制措施进行了分析讨论。并根据实际施工情况分析了通过电子雷管实现干扰降振的减振效果,为类似工程提供借鉴作用。 相似文献
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Kathryn A. Powlen Jonathan Salerno Kelly W. Jones Michael C. Gavin 《Conservation biology》2023,37(4):e14058
Protected areas (PAs) are a commonly used strategy to confront forest conversion and biodiversity loss. Although determining drivers of forest loss is central to conservation success, understanding of them is limited by conventional modeling assumptions. We used random forest regression to evaluate potential drivers of deforestation in PAs in Mexico, while accounting for nonlinear relationships and higher order interactions underlying deforestation processes. Socioeconomic drivers (e.g., road density, human population density) and underlying biophysical conditions (e.g., precipitation, distance to water, elevation, slope) were stronger predictors of forest loss than PA characteristics, such as age, type, and management effectiveness. Within PA characteristics, variables reflecting collaborative and equitable management and PA size were the strongest predictors of forest loss, albeit with less explanatory power than socioeconomic and biophysical variables. In contrast to previously used methods, which typically have been based on the assumption of linear relationships, we found that the associations between most predictors and forest loss are nonlinear. Our results can inform decisions on the allocation of PA resources by strengthening management in PAs with the highest risk of deforestation and help preemptively protect key biodiversity areas that may be vulnerable to deforestation in the future. 相似文献
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基于安全仪表系统共因失效机理的定性分析,在单一冲击下的RPS模型基础上,以泊松分布作为冲击的先验分布,建立了多冲击下考虑共因失效的安全仪表系统可靠性模型;采用基于专家经验和估计的方法,对模型参数进行估计;并通过定量分析确定出影响系统共因失效的最大冲击因子,为降低系统共因失效对可靠性的影响提供辅助决策支持。将改进的多冲击RPS模型的可靠性分析结果与β模型和PDS模型进行比较,验证了该模型的工程准确性。 相似文献
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The vibration of dip tube in multi-burner gasifier changes the stress at the connection, causing flange seal failures and high temperature gas erosions with heavy economic losses and industrial accidents. This work aims to reveal the dip tube vibration mechanism, with special focus on obtaining the effect of operational parameters on the fatigue damage and long-term stable operation of gasifiers. A three-dimensional numerical simulation of the water-scrubbing cooling chamber was conducted to obtain the excitation source in the flow field. Then a FSI (fluid-structure interaction) transient dynamics simulation was carried out to investigate the vibration characteristics. Two major flow forms were found: a vertical annular flow near the dip tube outlet in the water-scrubbing cooling chamber; and a gas-liquid coupled flow caused by the syngas entrained the liquid. These two unstable multiphase flow forms exerted an energy excitation on the dip tube, resulting in a self-excited flutter. The dip tube vibration was similar to the first mode of a cantilever beam. The peak frequency was less affected by the initial liquid level and the syngas stream inlet velocity, which was close to its own first natural frequency. Note that, the alternating load generated by vibration may cause fatigue damage, which needs to be specifically considered in the design and manufacturing process of opposed multi-burner gasifier. 相似文献
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通过室外试验的方法、从二维角度入手并将排桩参数与瑞利波波长建立联系研究了几何参数变化时隔振半径的变化。结果表明:单排桩可取得整体性的隔振特点,并且隔振效果最佳的区域在桩后较近的距离;桩长增加可使其隔振效果提升且隔振半径随桩长与波长比值的增加而增加,当桩长与波长比值小于0.320时,隔振半径为0;随比值增加到0.820左右,隔振半径增加到约0.680 m。桩间距的增加可使其隔振效果变差,隔振半径随桩间距与波长比值增加而降低,当比值达到0.300~0.430时,隔振半径长度降为0。振源距离增加可使得排桩隔振效果增强,而隔振半径随振源距与波长比值增加而增加,当比值在0.165~0.305的范围内时,隔振半径为0;随比值增加到0.808左右,隔振半径的长度增加到约0.512 m。 相似文献
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